An advanced image processing and multivariate statistical methodology to interpret Micro-EDXRF 2D maps: Uncovering heterogeneity and spatial distribution patterns of rare earth elements in phosphogypsum

IF 8.1 2区 环境科学与生态学 Q1 ENVIRONMENTAL SCIENCES
Sofia Barbosa , Pedro Catalão Moura , António Dias , Nils Haneklaus , Hajar Bellefqih , Katarzyna Kiegiel , Carlos Ruiz Canovas , José Miguel Nieto , Essaid Bilal , Sofia Pessanha
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引用次数: 0

Abstract

Phosphogypsum (PG), a by-product of the fertilizer industry, is a potential source of rare earth elements (REEs) such as Lanthanum (La), Cerium (Ce), Neodymium (Nd), and Yttrium (Y). These elements were efficiently detected using micro-Energy Dispersive X-Ray Fluorescence (μ-EDXRF). Although a homogeneous REE distribution was expected in μ-EDXRF 2D maps, significant heterogeneity and variations in elemental associations (EA) were observed at a micrometric scale. To enhance and better interpret μ-EDXRF mapping results, a specialized image processing methodology was developed, incorporating Principal Component Analysis (PCA), Hierarchical Clustering (HC), and Multiple Linear Regression (MLA) which were applied to process and analyse 2D RGB pixel data. Identification of spatial overlaps, and multivariate correlations among the detected elements could be achieved. Notably, distinct EA patterns were found, with Ti, Ba, Y, and K playing a key role in REEs spatial distribution. Strong positive spatial correlations were identified between La and Ti, while Ce, Nd, and Y exhibited independent spatial distributions relative to La in certain sample areas. MLA further revealed strong EA between La, Ce, Nd, Y, and K, particularly in locations where Ti or Ba were also present. Additional elemental interactions were detected with Al, Cl, Ni, and Fe, with P and Cl showing significant correlations. Multicollinearity effects suggest strong interdependencies among elements. These findings highlight distinct REE spatial distributions within PG, demonstrating that mineralogical and compositional variations within the PG matrix influence REE spatial distribution patterns. Understanding these associations can improve strategies for REEs recovery from PG waste.

Abstract Image

一种先进的图像处理和多元统计方法来解释微edxrf二维图:揭示磷石膏中稀土元素的异质性和空间分布模式
磷石膏(PG)是化肥工业的副产品,是稀土元素(ree)的潜在来源,如镧(La)、铈(Ce)、钕(Nd)和钇(Y)。微能量色散x射线荧光(μ-EDXRF)有效地检测了这些元素。虽然μ-EDXRF二维图中稀土元素分布均匀,但在微米尺度上观察到元素关联(EA)的显著异质性和变化。为了增强和更好地解释μ-EDXRF映射结果,开发了一种专门的图像处理方法,将主成分分析(PCA)、层次聚类(HC)和多元线性回归(MLA)相结合,用于处理和分析二维RGB像素数据。可以识别空间重叠,以及被检测元素之间的多变量相关性。值得注意的是,稀土元素具有明显的EA分布模式,其中Ti、Ba、Y和K在稀土元素的空间分布中起关键作用。La和Ti之间存在很强的空间正相关关系,而Ce、Nd和Y在某些样品区域相对于La表现出独立的空间分布。MLA进一步揭示了La, Ce, Nd, Y和K之间的强EA,特别是在Ti或Ba也存在的位置。此外,还发现了Al、Cl、Ni和Fe元素之间的相互作用,其中P和Cl表现出显著的相关性。多重共线性效应表明元素之间有很强的相互依赖性。这些发现突出了PG中不同的稀土元素空间分布,表明PG基质中的矿物学和成分变化影响了稀土元素的空间分布模式。了解这些关联可以改进从PG废物中回收稀土元素的策略。
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来源期刊
Chemosphere
Chemosphere 环境科学-环境科学
CiteScore
15.80
自引率
8.00%
发文量
4975
审稿时长
3.4 months
期刊介绍: Chemosphere, being an international multidisciplinary journal, is dedicated to publishing original communications and review articles on chemicals in the environment. The scope covers a wide range of topics, including the identification, quantification, behavior, fate, toxicology, treatment, and remediation of chemicals in the bio-, hydro-, litho-, and atmosphere, ensuring the broad dissemination of research in this field.
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